partialSlipFvPatchField.C
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25 
27 #include "symmTransformField.H"
28 
29 // * * * * * * * * * * * * * * * * Constructors * * * * * * * * * * * * * * //
30 
31 template<class Type>
33 (
34  const fvPatch& p,
36 )
37 :
38  transformFvPatchField<Type>(p, iF),
39  valueFraction_(p.size(), 1.0)
40 {}
41 
42 
43 template<class Type>
45 (
46  const fvPatch& p,
48  const dictionary& dict
49 )
50 :
51  transformFvPatchField<Type>(p, iF),
52  valueFraction_("valueFraction", dict, p.size())
53 {
54  evaluate();
55 }
56 
57 
58 template<class Type>
60 (
62  const fvPatch& p,
64  const fvPatchFieldMapper& mapper
65 )
66 :
67  transformFvPatchField<Type>(ptf, p, iF, mapper),
68  valueFraction_(mapper(ptf.valueFraction_))
69 {}
70 
71 
72 template<class Type>
74 (
77 )
78 :
79  transformFvPatchField<Type>(ptf, iF),
80  valueFraction_(ptf.valueFraction_)
81 {}
82 
83 
84 // * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * //
85 
86 template<class Type>
88 (
89  const fvPatchField<Type>& ptf,
90  const fvPatchFieldMapper& mapper
91 )
92 {
94 
95  const partialSlipFvPatchField<Type>& dmptf =
96  refCast<const partialSlipFvPatchField<Type>>(ptf);
97 
98  mapper(valueFraction_, dmptf.valueFraction_);
99 }
100 
101 
102 template<class Type>
104 (
105  const fvPatchField<Type>& ptf
106 )
107 {
109 
110  const partialSlipFvPatchField<Type>& dmptf =
111  refCast<const partialSlipFvPatchField<Type>>(ptf);
112 
113  valueFraction_.reset(dmptf.valueFraction_);
114 }
115 
116 
117 template<class Type>
120 {
121  tmp<vectorField> nHat = this->patch().nf();
122  const Field<Type> pif(this->patchInternalField());
123 
124  return
125  (
126  (1.0 - valueFraction_)*transform(I - sqr(nHat), pif) - pif
127  )*this->patch().deltaCoeffs();
128 }
129 
130 
131 template<class Type>
133 (
134  const Pstream::commsTypes
135 )
136 {
137  if (!this->updated())
138  {
139  this->updateCoeffs();
140  }
141 
142  tmp<vectorField> nHat = this->patch().nf();
143 
145  (
146  (1.0 - valueFraction_)
147  *transform(I - sqr(nHat), this->patchInternalField())
148  );
149 
151 }
152 
153 
154 template<class Type>
157 {
158  const vectorField nHat(this->patch().nf());
159  vectorField diag(nHat.size());
160 
161  diag.replace(vector::X, mag(nHat.component(vector::X)));
162  diag.replace(vector::Y, mag(nHat.component(vector::Y)));
163  diag.replace(vector::Z, mag(nHat.component(vector::Z)));
164 
165  return
166  valueFraction_*pTraits<Type>::one
167  + (1.0 - valueFraction_)
168  *transformFieldMask<Type>(pow<vector, pTraits<Type>::rank>(diag));
169 }
170 
171 
172 template<class Type>
174 {
176  writeEntry(os, "valueFraction", valueFraction_);
177 }
178 
179 
180 // ************************************************************************* //
Field with dimensions and associated with geometry type GeoMesh which is used to size the field and a...
Pre-declare SubField and related Field type.
Definition: Field.H:82
tmp< Field< cmptType > > component(const direction) const
Return a component field of the field.
Definition: Field.C:455
void size(const label)
Override size to be inconsistent with allocated storage.
Definition: ListI.H:164
An Ostream is an abstract base class for all output systems (streams, files, token lists,...
Definition: Ostream.H:57
commsTypes
Types of communications.
Definition: UPstream.H:65
A list of keyword definitions, which are a keyword followed by any number of values (e....
Definition: dictionary.H:160
Foam::fvPatchFieldMapper.
Abstract base class with a fat-interface to all derived classes covering all possible ways in which t...
Definition: fvPatchField.H:87
virtual void evaluate(const Pstream::commsTypes commsType=Pstream::commsTypes::blocking)
Evaluate the patch field, sets Updated to false.
Definition: fvPatchField.C:211
virtual void write(Ostream &) const
Write.
Definition: fvPatchField.C:231
virtual void reset(const fvPatchField< Type > &)
Reset the fvPatchField to the given fvPatchField.
Definition: fvPatchField.C:197
virtual void map(const fvPatchField< Type > &, const fvPatchFieldMapper &)
Map the given fvPatchField onto this fvPatchField.
Definition: fvPatchField.C:187
A finiteVolume patch using a polyPatch and a fvBoundaryMesh.
Definition: fvPatch.H:64
Traits class for primitives.
Definition: pTraits.H:53
This boundary condition provides a partial slip condition. The amount of slip is controlled by a user...
virtual void evaluate(const Pstream::commsTypes commsType=Pstream::commsTypes::blocking)
Evaluate the patch field.
virtual void write(Ostream &) const
Write.
partialSlipFvPatchField(const fvPatch &, const DimensionedField< Type, volMesh > &)
Construct from patch and internal field.
virtual tmp< Field< Type > > snGrad() const
Return gradient at boundary.
virtual void reset(const fvPatchField< Type > &)
Reset the fvPatchField to the given fvPatchField.
virtual void map(const fvPatchField< Type > &, const fvPatchFieldMapper &)
Map the given fvPatchField onto this fvPatchField.
virtual tmp< Field< Type > > snGradTransformDiag() const
Return face-gradient transform diagonal.
A class for managing temporary objects.
Definition: tmp.H:55
Foam::transformFvPatchField.
dimensionedSymmTensor sqr(const dimensionedVector &dv)
static const Identity< scalar > I
Definition: Identity.H:93
dimensionedScalar pow(const dimensionedScalar &ds, const dimensionedScalar &expt)
void writeEntry(Ostream &os, const HashTable< T, Key, Hash > &ht)
Definition: HashTableIO.C:96
void diag(pointPatchField< vector > &, const pointPatchField< tensor > &)
dimensionSet transform(const dimensionSet &)
Definition: dimensionSet.C:483
dimensioned< scalar > mag(const dimensioned< Type > &)
dictionary dict
volScalarField & p